Science & Worldbuilding

The science is part of the narrative machinery.

In this fiction, a scientific premise is not a permission slip for anything to happen. It creates a new set of constraints: energy still has to come from somewhere, information has to travel, structures have to survive stress, and every technological solution creates costs of its own.

Four working scales

From physical law to civilization design.

01Astrophysics

Stellar systems, relativistic travel, observational limits, orbital dynamics, gravitational phenomena, and the energetic scale of astronomical events.

02Engineering

Habitat design, survival infrastructure, fusion energy, thermal limits, redundancy, logistics, and what large-scale engineering can realistically demand from a civilization.

03Fundamental physics

Research questions in particle physics, spacetime, gravitation, and cosmology provide conceptual material while established physical constraints remain the baseline of the fiction.

04Deep-time systems

Civilization design, continuity of information and identity, technological risk, governance, and decisions whose consequences may persist long after their original context disappears.

Worldbuilding method

Start with the constraint. Follow the consequence.

Hard science fiction becomes most useful when the science removes easy answers rather than supplying them.

A propulsion system implies energy, reaction mass, heat, acceleration, travel time, maintenance, and failure modes. A sealed habitat implies agriculture, medicine, population management, spare parts, political authority, and decades of cumulative human error. A technology that changes the persistence of identity immediately raises questions about continuity, consent, memory, and what society is willing to call a person.

The purpose of the technical work is therefore not to make the story read like a paper. It is to make consequences difficult to escape. Once the physical rules are chosen, the characters have to live inside them.

Selected independent research

Research that intersects with the fiction.

Spacetime & gravitation

Quantized Spacetime: A Unified Framework for Quantum Fields and Gravity

An independent theoretical research manuscript exploring a quantized-spacetime framework. On the fiction side, questions of spacetime structure help define where speculation begins and where established physics must continue to constrain it.

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Particle physics

The Universal Quadratic Law for Fermionic Masses

Independent research on possible regularities in fermion masses. Its relevance here is methodological as much as thematic: looking for structure in physical data while keeping mathematical claims distinct from fictional extrapolation.

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Astrophysics & cosmology

Unified Phenomenology across Astrophysical and Cosmological Anomalies

An independent research manuscript examining astrophysical and cosmological phenomena. It sits closest to the large-scale environments that repeatedly shape the fiction: gravity, astronomical observation, and systems whose behavior cannot be reduced to human intuition.

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Research and fiction are presented separately. Inclusion on this page does not imply scientific consensus, journal endorsement, or that a speculative mechanism in the novels is established physics. Where the fiction moves beyond established knowledge, that boundary should remain visible.

Editorial principle

Curated, not encyclopedic.

This section is deliberately selective. It is not a reconstruction of the former educational platform and it is not intended to become a general repository of every technical document associated with the author.

The criterion is simple: a research question or technical subject belongs here when it helps a reader understand how the fiction is built, what constraints matter, or why a particular speculative problem is interesting.

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